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单 ADP - 核糖水解酶MACROD2对小鼠对代谢和基因毒性损伤的反应并非必需。

Mono-ADP-Ribosylhydrolase MACROD2 Is Dispensable for Murine Responses to Metabolic and Genotoxic Insults.

作者信息

Lo Re Oriana, Mazza Tommaso, Vinciguerra Manlio

机构信息

International Clinical Research Center, St Anne's University Hospital, Brno, Czechia.

Department of Biology, Faculty of Medicine, Masaryk University, Brno, Czechia.

出版信息

Front Genet. 2018 Dec 12;9:654. doi: 10.3389/fgene.2018.00654. eCollection 2018.

Abstract

ADP-ribosylation is an important post-translational protein modification that regulates diverse biological processes, controlled by dedicated transferases, and hydrolases. Disruption in the gene encoding for MACROD2, a mono-ADP-ribosylhydrolase, has been associated to the Kabuki syndrome, a pediatric congenital disorder characterized by facial anomalies, and mental retardation. Non-coding and structural mutations/variations in MACROD2 have been associated to psychiatric disorders, to obesity, and to cancer. Mechanistically, it has been recently shown that frequent deletions of the MACROD2 alter DNA repair and sensitivity to DNA damage, resulting in chromosome instability, and colorectal tumorigenesis. Whether MACROD2 deletion sensitizes the organism to metabolic and tumorigenic stressors, in absence of other genetic drivers, is unclear. As MACROD2 is ubiquitously expressed in mice, here we generated constitutively whole-body knock-out mice for MACROD2, starting from mouse embryonic stem (ES) cells deleted for the gene using the VelociGene technology, belonging to the Knockout Mouse Project (KOMP) repository, a NIH initiative. MACROD2 knock-out mice were viable and healthy, indistinguishable from wild type littermates. High-fat diet administration induced obesity, and glucose/insulin intolerance in mice independent of MACROD2 gene deletion. Moreover, sub-lethal irradiation did not indicate a survival or lethality bias in MACROD2 knock-out mice compared to wild type littermates. Altogether, our data point against a sufficient role of MACROD2 deletion in aggravating high-fat induced obesity and DNA damage-associated lethality, in absence of other genetic drivers.

摘要

ADP核糖基化是一种重要的翻译后蛋白质修饰,可调节多种生物过程,由特定的转移酶和水解酶控制。编码单ADP核糖水解酶MACROD2的基因破坏与歌舞伎综合征有关,这是一种以面部异常和智力发育迟缓为特征的儿科先天性疾病。MACROD2中的非编码和结构突变/变异与精神疾病、肥胖和癌症有关。从机制上讲,最近有研究表明,MACROD2的频繁缺失会改变DNA修复和对DNA损伤的敏感性,导致染色体不稳定和结直肠癌发生。在没有其他遗传驱动因素的情况下,MACROD2缺失是否会使机体对代谢和致瘤应激源敏感尚不清楚。由于MACROD2在小鼠中普遍表达,我们在此从使用属于美国国立卫生研究院(NIH)倡议的基因敲除小鼠项目(KOMP)储存库的VelociGene技术删除该基因的小鼠胚胎干细胞开始,生成了MACROD2的组成型全身敲除小鼠。MACROD2敲除小鼠存活且健康,与野生型同窝小鼠无明显差异。高脂饮食诱导小鼠肥胖以及葡萄糖/胰岛素不耐受,这与MACROD2基因缺失无关。此外,亚致死剂量照射并未表明MACROD2敲除小鼠与野生型同窝小鼠相比在存活或致死率上存在偏差。总之,我们的数据表明,在没有其他遗传驱动因素的情况下,MACROD2缺失在加重高脂诱导的肥胖和DNA损伤相关致死率方面没有充分作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3e2/6305994/7524bcef302d/fgene-09-00654-g001.jpg

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